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探究地中海医用水蛭()对多孔基质的附着情况。

Exploring the attachment of the Mediterranean medicinal leech () to porous substrates.

机构信息

Plant Biomechanics Group (PBG), University of Freiburg, Botanic Garden, Schänzlestr. 1, 79104 Freiburg im Breisgau, Germany.

Freiburg Materials Research Center (FMF), University of Freiburg, Stefan-Meier-Str. 21, 79104 Freiburg im Breisgau, Germany.

出版信息

J R Soc Interface. 2020 Jul;17(168):20200300. doi: 10.1098/rsif.2020.0300. Epub 2020 Jul 15.

Abstract

Haematophagous ectoparasites must ensure a reliable hold to their host during blood meals and, therefore, have evolved a broad spectrum of versatile and effective attachment mechanisms. The Mediterranean medicinal leech (), for example, uses suction on both smooth and textured air-tight substrates. However, preliminary studies showed that is also capable of attaching itself to air-permeable substrates, where suction does not work. Using high-speed videography and mechanical tests, we comparatively investigated the attachment of on both smooth and textured air-tight as well as on porous artificial substrates, also considering the influence of mucus on sucker surfaces. In general, the leech-specific locomotion cycle did not differ between the tested surfaces, and the leeches were able to reliably attach to both air-tight and porous substrates. From our results, we conclude that suction is presumably the primary attachment mechanism of . However, secondary mechanisms such as mechanical interlocking with surface asperities and pores or capillary forces occurring at the interface between the mucus-covered suckers and the substratum are also employed. In any case, the rich repertoire of applicable attachment principles renders the organs of functionally highly resilient.

摘要

吸血外寄生虫在吸血过程中必须确保与宿主可靠地附着,因此进化出了广泛的多功能且有效的附着机制。例如,地中海医用水蛭( Hirudo medicinalis )在光滑和有纹理的气密基质上都能同时利用吸力。然而,初步研究表明, 也能够附着在透气的基质上,而在这种基质上吸力不起作用。我们使用高速录像和机械测试,比较了 在光滑和有纹理的气密以及多孔人工基质上的附着情况,同时也考虑了粘液对吸盘表面的影响。一般来说,测试表面之间的医用水蛭特有的运动周期没有差异,并且水蛭能够可靠地附着在气密和多孔基质上。根据我们的结果,我们得出结论,吸力可能是 的主要附着机制。然而,次要机制,如与表面突起和孔的机械互锁,或者在覆盖有粘液的吸盘和基质之间的界面处发生的毛细作用力,也被使用。在任何情况下,丰富的适用附着原理使得 的器官在功能上具有高度的弹性。

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